ISL78236CRSHEVAL1Z

Automotive High Efficiency Synchronous Buck Regulator Evaluation Board

Description

The ISL78236CRSHEVAL1Z kit is intended for use by individuals with requirements for point-of-load (POL) applications sourcing from 2.85V to 6V. The ISL78236CRSHEVAL1Z evaluation board is used to demonstrate the performance of the ISL78236 low quiescent current mode converter in current sharing configuration. The evaluation board is configured to deliver up to 6A output current with both outputs paralleled together. The ISL78236 can also be used in dual output 3A/3A configuration as well. The ISL78236 is offered in a 4mmx4mm 24 Ld QFN package with 1mm maximum height. The complete converter occupies less than 5.46cm2 area.

Key Features

  • Current sharing 6A high efficiency synchronous buck regulator with up to 95% Efficiency
  • 180° out-of-phase channel switching
  • 2% output accuracy over-temperature/load/line
  • Externally adjustable soft-start time
  • Soft-stop output discharge during disabled
  • External synchronization up to 6MHz
  • Typical 8µA shutdown current
  • 100% maximum duty cycle for lowest dropout
  • External current mode compensation
  • Peak current limiting, hiccup mode short circuit protection and over-temperature protection
  • Negative current detection and protection

Applications

  • DSP and embedded processor power supply
  • Infotainment system power
  • Automotive point of load power

ISL78236CRSHEVAL1Z Automotive Buck Regulator Eval Board

ISL78236CRSHEVAL1Z Automotive Buck Regulator Eval Board

 

Related Products

ISL78236

Tool Information

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Disclaimer: THIS MATERIAL IS PROVIDED “AS-IS” FOR EVALUATION PURPOSES ONLY. RENESAS ELECTRONICS CORPORATION AND ITS SUBSIDIARIES (collectively, “Renesas”) DISCLAIM ALL WARRANTIES, INCLUDING WITHOUT LIMITATION, FITNESS FOR A PARTICULAR PURPOSE AND MERCHANTABILITY. Renesas provides evaluation platforms and design proposals to help our customers to develop products. However, factors beyond Renesas' control, including without limitation, component variations, temperature changes and PCB layout, could significantly affect the product performance. It is the user’s responsibility to verify the actual circuit performance.